Analysis of size-dependent optoelectronic properties of red AlGaInP micro-LEDs

Author:

Fan Kaili1234ORCID,Zheng Kaifeng134,Lv Jinguang134,Zhao Baixuan134,Zhao Yingze134,Chen Yupeng134,Qin Yuxin134,Wang Qiang134ORCID,Wang Weibiao134,Liang Jingqiu134

Affiliation:

1. Changchun Institute of Optics

2. University of Chinese Academy of Sciences

3. State Key Laboratory of Applied Optics

4. Chinese Academy of Sciences, Changchun

Abstract

We have theoretically investigated the size-dependent optoelectronic properties of InGaP/AlGaInP-based red micro-LEDs through an electro-optical-thermal coupling model. The model considers thermal effects due to current crowding near the electrodes, non-thermal efficiency droop due to electron leakage, and etch defects on the LED sidewall. Sidewall defects reduce the carrier concentration at the light-emitting surface's edge and exacerbate the current crowding effect. In addition, p-side electron leakage at high current densities is the leading cause of the efficiency droop of AlGaInP LEDs. In contrast, the effect of temperature on the overall efficiency degradation of LEDs is even more significant.

Funder

National Key Research and Development Program of China

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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